Fracture behavior of Thixoformed 357-T5 Semi-solid Al alloys

반응고 357-T5 합금의 파괴 특성

  • 박철 (경상대학교, 재료공학부) ;
  • 김상식 (경상대학교, 재료공학부) ;
  • 배명환 (주식회사 센트랄 기술연구소) ;
  • 강신우 (주식회사 센트랄 기술연구소) ;
  • 권용남 (한국기계연구원, 재료기술부) ;
  • 이영선 (한국기계연구원, 재료기술부) ;
  • 이정환 (한국기계연구원, 재료기술부)
  • Published : 2003.05.01

Abstract

The effects of microstructural features on the fracture behaviors, including impact, high-cycle fatigue, fatigue and crack propagation, of thixoformed 357-T5 (Al-7%Si-0.6%Mg) alloy were examined. The resistance to impact and high-cycle fatigueof thixoformed 357-T5 tended to improve greatly with increasing solid volume fraction. An almost three-fold increase in impact energy value was, for example, observed with increasing solid volume fraction from 59 to 70%. The improvement in both impact and fatigue properties of thixoformed 357-75 with increasing solid volume fraction in the present study appeared to be related to the magnitude of stress concentration at the interface between primary and eutectic phase, by which the fracture process was largely influenced. Based on the fractographic and micrographic observations, the mechanism associated with the beneficial effect of high solid volume fraction in thixoformed 357-T5 alloy was discussed.

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